Cite

Arhipova, N., Jansons, A., Zaluma, A., Gaitnieks, T., Vasaitis, R. 2015. Bark stripping of Pinus contorta caused by moose and deer: wounding patterns, discoloration of wood, and associated fungi. - Canadian Journal of Forest Research, 45(10), 1434−1438.Search in Google Scholar

Burneviča, N., Jansons, Ā., Zaļuma, A., Kļaviņa, D., Jansons, J., Gaitnieks, T. 2016. Fungi inhabiting bark stripping wounds made by large game on stems of Picea abies (L.) Karst. in Latvia. - Baltic Forestry, 22(1), 2-7.Search in Google Scholar

Caspari, C.O., Sachsse, H. 1990. Cracking of Norway spruce. (Rissschäden an Fichte). - Forst und Holz (Forestry and Wood), 685-688. (In German).Search in Google Scholar

Cherubini, P., Schweingruber, F.H., Foster, T. 1997. Morphology and ecological signifi cance of intraannual radial cracks in living conifers. - Trees, 11(4), 216-222.Search in Google Scholar

Dietrichson, J., Rognerund, P.A., Haveraaen, O., Skrøppa, T. 1985. Stem cracks in Norway spruce (Picea abies (L.) Karst.). - Reports of the Norwegian Forest Research Institute, 38(21), 1-32.Search in Google Scholar

Giertych, M. 2007. Genetics. - Tjoelker, M. G., Boratynski, A., Bugala, W. (eds.). Biology and Ecology of Norway spruce. Netherlands, Springer, 115-155.Search in Google Scholar

Grabner, M., Cherubini, P., Rozenberg, P., Hannrup, B. 2006. Summer drought and low earlywood density induce intra-annual radial cracks in conifers. - Scandinavian Journal of Forest Research, 21, 151-157.Search in Google Scholar

Jansons, Ā. 2008. Genotype-environment interaction in Latvian Scots pine growth and quality traits and its impact to progeny testing. - Proceeding of international scientifi c conference Research for Rural Development, May 2008. Latvia, Jelgava, 128-136.Search in Google Scholar

Jansons, Ā., Baumanis, I., Dreimanis, A., Gailis, A. 2006. Variability and genetic determination of Scots pine quantitative traits at the age of 32 years. - Proceeding of international scientifi c conference Research for Rural Development, May 2006. Latvia, Jelgava, 289-295.Search in Google Scholar

Jansons, Ā., Donis, J., Danusevičius, D., Baumanis, I. 2015. Differential analysis for next breeding cycle for Norway spruce in Latvia. - Baltic Forestry, 21(2), 285-297.Search in Google Scholar

Jansons, Ā., Matisons, R., Krišāns, O., Džeriņa, B., Zeps, M. 2016. Effect of initial fertilization on 34-year increment and wood properties of Norway spruce in Latvia. - Silva Fennica, 50(1), id 1346, 8 pp.10.14214/sf.1346Search in Google Scholar

Klavina, D., Pennanen, T., Gaitnieks, T., Velmala, S., Lazdins, A., Lazdina, D., Menkis, A. 2016. The ectomycorrhizal community of conifer stands on peat soils 12 years after fertilization with wood ash. - Mycorrhiza, 26(2), 153-160.Search in Google Scholar

Liepins, K., Lazdins, A., Lazdina, D., Daugaviete, M., Miezite, O. 2008. Naturally afforested agricultural lands in Latvia - Assessment of available timber resources and potential productivity. Proceedings of 7th International Conference on Environmental Engineering, ICEE 2008, 194-200.Search in Google Scholar

Mattheck, C., Kubler, H. 1997. Wood - The Internal Optimization of Trees. Berlin, Springer, 129 pp.10.1007/978-3-642-61219-0Search in Google Scholar

Modrzynski, J. 2007. Ecology. - Tjoelker, M. G., Boratynski, A., Bugala, W. (eds.). Biology and Ecology of Norway spruce. Netherlands, Springer, 195-220.Search in Google Scholar

Mullin, T.J., Andersson, B., Bastien, J.C., Beaulieu, J., Burdon, R.D., Dvorak, W.S., King, J.N., Kondo, T., Krakowski, J., Lee, S.J., McKeand, S.E., Pâques, L., Raffi n, A., Russell, J.H., Skrøppa, T., Stoehr, M., Yanchuk, A. 2011. Economic Importance, Breeding Objectives and Achievements. - Kole, C. (ed.). Genetics, Genomics and Breeding of Conifers. Science Publishers, 41-127.Search in Google Scholar

Napola, J. 2014. The success of the origins of Easternand Mideuropean Norway spruce in southern Finland. (Itä-ja keskieurooppalaisten kuusialkuperien menestyminen Etelä-Suomessa). - Working Papers of the Finnish Forest Research, 288, 77 pp. (In Finnish).Search in Google Scholar

Napola, M.L., Napola, J. 2014. Observations and results of stem damages in the experimental Norway spruce plantations. (Havaintoja ja tuloksia kuusen koeviljelysten korovaurioista). - Working Papers of the Finnish Forest Research 296, 51 pp. (In Finnish).Search in Google Scholar

Neimane, U., Katrevics, J., Sisenis, L., Purins, M., Luguza, S., Adamovics, A. 2016. Intra-annual dynamics of height growth of Norway spruce in Latvia. - Agronomy research, 14(3), 853-861.Search in Google Scholar

Persson, A. 1994. Stem cracks in Norway spruce in southern Scandinavia: causes and consequences. - Annales des Sciences Forestieries, 51, 315-327.Search in Google Scholar

Persson, A., Persson, B. 1992. Survival, growth and quality of Norway spruce Picea abies (L.) Karst. provenances at the three Swedish sites of the IUFRO 1964/68 provenance experiment. Department of Forest Yield Research. Report, 29, 1-67.Search in Google Scholar

Schelhaas, M.J., Varis, S., Schuck, A., Nabuurs, G.J. 2006. EFISCEN Inventory Database, European Forest Institute, Joensuu, Finland. [WWW document]. - URL http://www.efi.int/portal/virtual_library/databases/efiscen/ [Accessed 5 September 2016].Search in Google Scholar

Vasiliauskas, R., Juška, E., Stenlid, J., Vasiliauskas, A. 2001. Clonal differences and relations between diameter growth, stem cracks and fungi in a 36-year-old clonal seed orchard of Norway spruce (Picea abies (L.) Krast). - Silvae Genetica, 50(5-6), 227-233.Search in Google Scholar

Westin, J., Haapanen, M. 2013. Norway spruce - Picea abies (L.) Karst. - Mullin, T.J., Lee, S.J. (eds.). Best practice for tree breeding in Europe. Uppsala, Skogforsk, 29-47.Search in Google Scholar

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